Suppression of FOXO1 is responsible for a growth regulatory repressive transcriptional sub-signature of EWS-FLI1 in Ewing sarcoma

被引:0
作者
S Niedan
M Kauer
D N T Aryee
R Kofler
R Schwentner
A Meier
U Pötschger
U Kontny
H Kovar
机构
[1] Children’s Cancer Research Institute,Department of Pediatrics
[2] St Anna Kinderkrebsforschung,Division of Molecular Pathophysiology
[3] Medical University,Division of Pediatric Hematology and Oncology, Department of Pediatrics and Adolescent Medicine
[4] Biocenter,undefined
[5] Medical University Innsbruck,undefined
[6] University Medical Center,undefined
来源
Oncogene | 2014年 / 33卷
关键词
CDK2; Ewing sarcoma; EWS-FLI1; FOXO1;
D O I
暂无
中图分类号
学科分类号
摘要
The Ewing sarcoma (ES) EWS-FLI1 chimeric oncoprotein is a prototypic aberrant ETS transcription factor with activating and repressive regulatory functions. We report that EWS-FLI1-repressed promoters are enriched in forkhead box (FOX) recognition motifs, and identify FOXO1 as a EWS-FLI1-suppressed regulator orchestrating a major subset of EWS-FLI1-repressed genes. In addition to FOXO1 regulation by direct promoter binding of EWS-FLI1, its subcellular localization and activity is regulated by cyclin-dependent kinase 2- and AKT-mediated phosphorylation downstream of EWS-FLI1. Restoration of nuclear FOXO1 expression in ES cells impaired proliferation and significantly reduced clonogenicity. Gene-expression profiling revealed a significant overlap between EWS-FLI1-repressed and FOXO1-activated genes. As a proof of principle for a potential therapeutic application of our findings, the treatment of ES cell lines with methylseleninic acid (MSA) reactivated endogenous FOXO1 in the presence of EWS-FLI1 in a dose- and time-dependent manner and induced massive cell death dependent on FOXO1. In an orthotopic xenograft mouse model, MSA increased FOXO1 expression in the tumor paralleled by a significant decrease in ES tumor growth. FOXO1 reactivation by small molecules may therefore serve as a promising strategy for a future ES-specific therapy.
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页码:3927 / 3938
页数:11
相关论文
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